Lauweryns J M, Van Lommel A
Cell Tissue Res. 1982;226(1):201-14. doi: 10.1007/BF00217094.
A morphometric analysis has demonstrated ultrastructural changes induced by hypoxia in the epithelial cells and the intracorpuscular nerve endings of the presumed chemoreceptive intrapulmonary neuroepithelial bodies (NEB) of neonatal rabbits. Acute hypoxia stimulates an exocytosis of epithelial dense-core vesicles (DCV) at the level of the morphologically afferent or sensory (type 1 a) intracorpuscular nerve endings of the NEB. Assuming the epithelial cells to be chemoreceptive, this phenomenon could represent a transduction of sensory stimuli. In the morphologically efferent or motor (type 2 and type 1b) intracorpuscular nerve endings of the NEB, acute hypoxia causes a depletion of synaptic vesicles and an increase in the amount of membrane-bounded cisternae and multivesicular bodies, suggestive of an enhanced synaptic activity of these nerve endings. It is proposed that the chemoreceptor cells could thus in turn be modulated centrifugally by their efferent-like intracorpuscular nerve endings. It has been proposed in our earlier studies that the NEB probably are intrapulmonary chemoreceptors with local secretory activities, reacting to the composition of the inhaled air. By the release of serotonin and peptide substances they may produce a local vasoconstriction in hypoxically aerated lung areas, enabling an intrapulmonary regulation of the V/Q ratio. The present study provides evidence that, in addition to this local effect, NEB could generate centripetal nerve impulses via exocytosis of epithelial DCV at the afferent-like intracorpuscular nerve endings. At the same time they could be modulated by the CNS via their efferent-like intracorpuscular nerve endings.
形态计量学分析已经证实,新生兔假定的化学感受性肺内神经上皮小体(NEB)的上皮细胞和球内神经末梢在缺氧时会发生超微结构变化。急性缺氧会刺激NEB形态学上传入或感觉(1a型)球内神经末梢水平上皮致密核心囊泡(DCV)的胞吐作用。假设上皮细胞具有化学感受性,这种现象可能代表感觉刺激的转导。在NEB形态学上传出或运动(2型和1b型)球内神经末梢中,急性缺氧会导致突触囊泡耗尽,膜结合池和多囊泡体数量增加,提示这些神经末梢的突触活性增强。有人提出,化学感受细胞可能会反过来受到其类似传出的球内神经末梢的离心调节。我们早期的研究提出,NEB可能是具有局部分泌活动的肺内化学感受器,对吸入空气的成分作出反应。通过释放5-羟色胺和肽类物质,它们可能在缺氧通气的肺区域产生局部血管收缩,从而实现肺内V/Q比值的调节。本研究提供了证据,表明除了这种局部作用外,NEB还可以通过上皮DCV在类似传入的球内神经末梢处的胞吐作用产生向心神经冲动。同时,它们可以通过其类似传出的球内神经末梢受到中枢神经系统的调节。